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The structural origin of the hard-sphere glass transition in granular packing

机译:颗粒填料中硬球玻璃化转变的结构起源

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Glass transition is accompanied by a rapid growth of the structural relaxation time and a concomitant decrease of configurational entropy. It remains unclear whether the transition has a thermodynamic origin, and whether the dynamic arrest is associated with the growth of a certain static order. Using granular packing as a model hard-sphere glass, we show the glass transition as a thermodynamic phase transition with a 'hidden' polytetrahedral order. This polytetrahedral order is spatially correlated with the slow dynamics. It is geometrically frustrated and has a peculiar fractal dimension. Additionally, as the packing fraction increases, its growth follows an entropy-driven nucleation process, similar to that of the random first-order transition theory. Our study essentially identifies a long-sought-after structural glass order in hard-sphere glasses.
机译:玻璃化转变伴随着结构弛豫时间的快速增长和构型熵的随之降低。尚不清楚转变是否具有热力学起源,以及动态停滞是否与某个静态顺序的增长有关。使用粒状填料作为硬球玻璃模型,我们将玻璃化转变显示为具有“隐藏”多四面体顺序的热力学相变。这种多四面体的顺序在空间上与缓慢的动力学相关。它在几何上受挫并且具有独特的分形维数。此外,随着堆积分数的增加,其生长遵循熵驱动的成核过程,类似于随机一阶跃迁理论。我们的研究从本质上确定了硬球玻璃中备受追捧的结构玻璃秩序。

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